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Comparative response of rocking-wall systems with cast-in-place and precast floor systems in buildings

机译:摇滚墙系统在建筑物中摇滚墙系统的比较响应

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Two large-scale structural assemblages, which had equivalent PreWEC (Precast Wall with End Columns) rocking-wall systems but different surrounding structures, were tested under quasi-static cyclic loading to study the impact of wall-floor interaction on the performance of rocking-wall buildings. The first specimen (PFS1) included cast-in-place (CIP) edge columns and a CIP unbonded post-tensioned slab with rigid wall-floor connections, which maximized wall-floor interaction. The second specimen (PFS2) included precast edge columns and a precast slab with special vertical-isolation wall-floor connectors, which minimized wall-floor interaction. Test results showed that both structural assemblages demonstrated great seismic performance with limited damage and self-centering behavior. The strength of PFS1 was more than twice that of PFS2; PFS2 encountered less damage and had better self-centering performance than PFS1, but it possessed less energy-dissipation capacity. The difference in the performance of the two assemblages was mainly attributed to the different gravity load transfer paths and constraint effects of the surrounding structures. Contributions to the strength and the self-centering behavior of the two assemblages from different structural elements were quantified and compared.
机译:在准静态循环载荷下测试了两种大规模结构组件,其具有相同的PREWEC(具有终点柱的预制墙)摇摆墙系统但不同的周围结构,以研究壁板相互作用对摇摆性能的影响 - 墙壁建筑物。第一样品(PFS1)包括取代式(CIP)边缘柱和带有刚性壁板连接的CIP未粘附的后柱状板,其最大化的壁板相互作用。第二样品(PFS2)包括预制边柱和具有特殊垂直隔离壁板连接器的预制板,最小化壁板相互作用。测试结果表明,两种结构组合都表现出极大的地震性能,损坏有限和自定心行为。 PFS1的强度超过PFS2的两倍; PFS2遇到损坏较少,并且具有比PFS1更好的自定心性能,但它具有更少的能量消耗能力。两个组件的性能的差异主要归因于周围结构的不同重力载荷传递路径和约束效应。量化并比较了对不同结构元素的两个组件的强度和自定心行为的贡献。

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